A large number of alternative exons are spliced with tissue-specific patterns, but little is known about how such patterns have evolved. Here, we study the conservation of the neuron-specific splicing factors Nova1 and Nova2 and of the alternatively spliced exons they regulate in mouse brain. Whereas Nova RNA binding domains are 94 % identical across vertebrate species, Nova-dependent splicing silencer and enhancer elements (YCAY clusters) show much greater divergence, as less than 50 % of mouse YCAY clusters are conserved at orthologous positions in the zebrafish genome. To study the relation between the evolution of tissue-specific splicing and YCAY clusters, we compared the brain-specific splicing of Nova-regulated exons in zebrafish, ch...
SummaryAlternative splicing is a key process underlying the evolution of increased proteomic and fun...
The mechanisms by which entire programmes of gene regulation emerged during evolution are poorly und...
Alternative splicing increases neuronal transcriptomic complexity throughout animal phylogeny. To de...
A large number of alternative exons are spliced with tissue-specific patterns, but little is known a...
Novel organismal structures in metazoans are often undergirded by complex gene regulatory networks; ...
<div><p>Alternative splicing patterns are known to vary between tissues but these patterns have been...
International audienceAlternative splicing patterns are known to vary between tissues but these patt...
Copyright © 2005 European Molecular Biology OrganizationThe Nova family of neuron-specific RNA-bindi...
Alternative splicing contributes to both gene regulation and protein diversity. To discover broad re...
Alternative splicing contributes to both gene regulation and protein diversity. To discover broad re...
Knowledge of the functional cis-regulatory elements that regulate constitutive and alternative pre-m...
Rapid and efficient communication between neurons of the brain occurs at specialized cellular struct...
Abstract Background Alternative splicing (AS) functio...
SummaryAlternative splicing is a key process underlying the evolution of increased proteomic and fun...
AbstractWe have combined genetic and biochemical approaches to analyze the function of the RNA-bindi...
SummaryAlternative splicing is a key process underlying the evolution of increased proteomic and fun...
The mechanisms by which entire programmes of gene regulation emerged during evolution are poorly und...
Alternative splicing increases neuronal transcriptomic complexity throughout animal phylogeny. To de...
A large number of alternative exons are spliced with tissue-specific patterns, but little is known a...
Novel organismal structures in metazoans are often undergirded by complex gene regulatory networks; ...
<div><p>Alternative splicing patterns are known to vary between tissues but these patterns have been...
International audienceAlternative splicing patterns are known to vary between tissues but these patt...
Copyright © 2005 European Molecular Biology OrganizationThe Nova family of neuron-specific RNA-bindi...
Alternative splicing contributes to both gene regulation and protein diversity. To discover broad re...
Alternative splicing contributes to both gene regulation and protein diversity. To discover broad re...
Knowledge of the functional cis-regulatory elements that regulate constitutive and alternative pre-m...
Rapid and efficient communication between neurons of the brain occurs at specialized cellular struct...
Abstract Background Alternative splicing (AS) functio...
SummaryAlternative splicing is a key process underlying the evolution of increased proteomic and fun...
AbstractWe have combined genetic and biochemical approaches to analyze the function of the RNA-bindi...
SummaryAlternative splicing is a key process underlying the evolution of increased proteomic and fun...
The mechanisms by which entire programmes of gene regulation emerged during evolution are poorly und...
Alternative splicing increases neuronal transcriptomic complexity throughout animal phylogeny. To de...